leucocyte–endothelial cell crosstalk at the blood–brain barrier: a prerequisite for successful immune cell entry to the brain

J Greenwood, SJ Heasman, JI Alvarez… - Neuropathology and …, 2011 - Wiley Online Library
J Greenwood, SJ Heasman, JI Alvarez, A Prat, R Lyck, B Engelhardt
Neuropathology and applied neurobiology, 2011Wiley Online Library
J. Greenwood, SJ Heasman, JI Alvarez, A. Prat, R. Lyck and B. Engelhardt (2011)
Neuropathology and Applied Neurobiology37, 24–39 Leucocyte–endothelial cell crosstalk
at the blood–brain barrier: A prerequisite for successful immune cell entry to the brain
Leucocyte migration into the central nervous system is a key stage in the development of
multiple sclerosis. While much has been learnt regarding the sequential steps of leucocyte
capture, adhesion and migration across the vasculature, the molecular basis of leucocyte …
J. Greenwood, S. J. Heasman, J. I. Alvarez, A. Prat, R. Lyck and B. Engelhardt (2011) Neuropathology and Applied Neurobiology37, 24–39
Leucocyte–endothelial cell crosstalk at the blood–brain barrier: A prerequisite for successful immune cell entry to the brain
Leucocyte migration into the central nervous system is a key stage in the development of multiple sclerosis. While much has been learnt regarding the sequential steps of leucocyte capture, adhesion and migration across the vasculature, the molecular basis of leucocyte extravasation is only just being unravelled. It is now recognized that bidirectional crosstalk between the immune cell and endothelium is an essential element in mediating diapedesis during both normal immune surveillance and under inflammatory conditions. The induction of various signalling networks, through engagement of cell surface molecules such as integrins on the leucocyte and immunoglobulin superfamily cell adhesion molecules on the endothelial cell, play a major role in determining the pattern and route of leucocyte emigration. In this review we discuss the extent of our knowledge regarding leucocyte migration across the blood–brain barrier and in particular the endothelial cell signalling pathways contributing to this process.
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